Literature DB >> 22738764

Cupriavidus alkaliphilus sp. nov., a new species associated with agricultural plants that grow in alkaline soils.

Paulina Estrada-de los Santos1, Lourdes Martínez-Aguilar, Isabel M López-Lara, Jesús Caballero-Mellado.   

Abstract

A group of 20 bacterial strains was isolated from the rhizosphere of different agricultural plants growing in alkaline soils in the northeast of Mexico. The phylogenetic analysis of the 16S rRNA gene sequence from four strains showed that this novel group belonged to the Cupriavidus genus, with C. taiwanensis (∼98.9%) and C. necator (∼98.8%) as the closest species. However, DNA-DNA reassociation values were less than 20%. The novel group did not fix nitrogen and lacked nifH and nodA genes, unlike C. taiwanensis. Whole-cell protein patterns were highly similar among the 20 strains but different from the closest Cupriavidus species. BOX-PCR patterns were distinct among the 20 strains but also differed from other Cupriavidus type species. The major cellular fatty acids from strains ASC-732(T) and SLV-2362 were C(16:0), C(18:1) ω7c/12t/9t and C(16:1) ω7c and/or C(15:0) iso 2OH. The major polar lipids consisted of phosphatidylglycerol, cardiolipin, phosphatidylethanolamine, 2-hydroxylated-phosphatidylethanolamine and an unknown aminolipid. The DNA G+C content of strain ASC-732(T) was 66.8mol%. All 20 strains grew in the presence of 5-10mgmL(-1) arsenic, 1mgmL(-1) zinc, and 0.1mgmL(-1) copper. Consequently, the group of strains was considered to represent a novel species for which the name Cupriavidus alkaliphilus sp. nov. is proposed. The type strain is ASC-732(T) (=LMG 26294(T)=CIP 110330(T)).
Copyright © 2012 Elsevier GmbH. All rights reserved.

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Year:  2012        PMID: 22738764     DOI: 10.1016/j.syapm.2012.05.005

Source DB:  PubMed          Journal:  Syst Appl Microbiol        ISSN: 0723-2020            Impact factor:   4.022


  10 in total

1.  Draft genome of five Cupriavidus plantarum strains: agave, maize and sorghum plant-associated bacteria with resistance to metals.

Authors:  Ivan Arroyo-Herrera; Fernando Uriel Rojas-Rojas; Karla Daniela Lozano-Cervantes; Violeta Larios-Serrato; María Soledad Vásquez-Murrieta; William B Whtiman; J Antonio Ibarra; Paulina Estrada-de Los Santos
Journal:  3 Biotech       Date:  2020-05-09       Impact factor: 2.406

2.  Novel Cupriavidus Strains Isolated from Root Nodules of Native Uruguayan Mimosa Species.

Authors:  Raúl Platero; Euan K James; Cecilia Rios; Andrés Iriarte; Laura Sandes; María Zabaleta; Federico Battistoni; Elena Fabiano
Journal:  Appl Environ Microbiol       Date:  2016-05-16       Impact factor: 4.792

3.  Phylogenetic analysis of burkholderia species by multilocus sequence analysis.

Authors:  Paulina Estrada-de los Santos; Pablo Vinuesa; Lourdes Martínez-Aguilar; Ann M Hirsch; Jesús Caballero-Mellado
Journal:  Curr Microbiol       Date:  2013-02-13       Impact factor: 2.188

4.  Whole-genome sequence of Cupriavidus sp. strain BIS7, a heavy-metal-resistant bacterium.

Authors:  Kar Wai Hong; Dinaiz al Thinagaran; Han Ming Gan; Wai-Fong Yin; Kok-Gan Chan
Journal:  J Bacteriol       Date:  2012-11       Impact factor: 3.490

5.  Impact of chemical- and bio-pesticides on bacterial diversity in rhizosphere of Vigna radiata.

Authors:  Sukriti Gupta; Rashi Gupta; Shilpi Sharma
Journal:  Ecotoxicology       Date:  2013-10-02       Impact factor: 2.823

6.  A Multicomponent THF Hydroxylase Initiates Tetrahydrofuran Degradation in Cupriavidus metallidurans ZM02.

Authors:  Hao Ren; Haixia Wang; Yang Wang; Yiyang Chen; Zhenmei Lu
Journal:  Appl Environ Microbiol       Date:  2022-03-22       Impact factor: 5.005

7.  High-quality permanent draft genome sequence of the Mimosa asperata - nodulating Cupriavidus sp. strain AMP6.

Authors:  Sofie E De Meyer; Matthew Parker; Peter Van Berkum; Rui Tian; Rekha Seshadri; T B K Reddy; Victor Markowitz; Natalia Ivanova; Amrita Pati; Tanja Woyke; Nikos Kyrpides; John Howieson; Wayne Reeve
Journal:  Stand Genomic Sci       Date:  2015-10-16

8.  Root-Associated Bacterial Community Shifts in Hydroponic Lettuce Cultured with Urine-Derived Fertilizer.

Authors:  Thijs Van Gerrewey; Christophe El-Nakhel; Stefania De Pascale; Jolien De Paepe; Peter Clauwaert; Frederiek-Maarten Kerckhof; Nico Boon; Danny Geelen
Journal:  Microorganisms       Date:  2021-06-18

9.  Draft Genome Sequence of Heavy Metal-Resistant Cupriavidus alkaliphilus ASC-732T, Isolated from Agave Rhizosphere in the Northeast of Mexico.

Authors:  Fernando Uriel Rojas-Rojas; Marcel Huntemann; Alicia Clum; Manoj Pillay; Krishnaveni Palaniappan; Neha Varghese; Natalia Mikhailova; Dimitrios Stamatis; T B K Reddy; Victor Markowitz; Natalia Ivanova; Nikos Kyrpides; Tanja Woyke; Nicole Shapiro; J Antonio Ibarra; Paulina Estrada-de Los Santos
Journal:  Genome Announc       Date:  2016-09-22

10.  Novel heavy metal resistance gene clusters are present in the genome of Cupriavidus neocaledonicus STM 6070, a new species of Mimosa pudica microsymbiont isolated from heavy-metal-rich mining site soil.

Authors:  Agnieszka Klonowska; Lionel Moulin; Julie Kaye Ardley; Florence Braun; Margaret Mary Gollagher; Jaco Daniel Zandberg; Dora Vasileva Marinova; Marcel Huntemann; T B K Reddy; Neha Jacob Varghese; Tanja Woyke; Natalia Ivanova; Rekha Seshadri; Nikos Kyrpides; Wayne Gerald Reeve
Journal:  BMC Genomics       Date:  2020-03-06       Impact factor: 3.969

  10 in total

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